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1.
纳米微粒材料生物学活性研究进展   总被引:1,自引:0,他引:1  
综述了纳米微粒的生物学效应及其免疫调节、抗菌、抗肿瘤等多种生物学活性.  相似文献   
2.
The objective of this study was to evaluate the effects of dietary supplementation with zinc oxide nanoparticles (ZnO‐NPs) on the performance, egg quality, Zn retention, immunity responses, superoxide dismutase activity (SOD), egg malondialdehyde (MDA) content, and serum parameters in laying hens in the late phase of production. A total of 288 laying hens at 64 weeks of age were randomly assigned to 4 treatments with 6 replicates, and 12 birds within each group. Experimental diets included a corn‐soybean meal‐based diet (without Zn supplementation) and a basal diet supplemented with 80 mg/kg of Zn‐oxide, ZnO‐NPs, and Zn‐methionine. The results indicated that egg production and egg mass were significantly higher in the Zn‐methionine and ZnO‐NPs groups (p < .05). Also, eggshell thickness and shell strength increased in the ZnO‐NPs group as compared with the other groups (p < .05). Moreover, Zn supplementation decreased egg loss (p < .05). There were significant differences among treatments in Zn deposition in tibiotarsus, liver, pancreas, eggs, and excreta (p < .01). Antibody titre, heterophil (%(, and phytohemagglutinin (PHA) were significantly higher in birds fed with Zn‐supplemented diets (p < .05). In treatments supplemented with ZnO‐NPs and Zn‐methionine, the SOD activity in the liver, pancreas, and plasma was greater as compared with the other treatments (p < .05). The MDA content in eggs was significantly reduced in groups supplemented with Zn (p < .01). Moreover, dietary Zn supplementation significantly affected serum total protein, albumin, glucose, alkaline phosphatase activity, carbonic anhydrase activity, and Zn level (p < .05). In conclusion, this study demonstrated that dietary supplementation with ZnO‐NPs can improve the performance of laying hens. Therefore, ZnO‐NPs can enhance zinc absorption in the intestine of aged layers and can be a more suitable source of zinc than regular Zn‐oxide in diets.  相似文献   
3.
AIM: To observe the influence of gold nanoparticles combined with Endostar (AuNPs-Endostar) on the melanoma lung metastasis of mice and the underlying mechanism. METHODS: C57BL/6 mice (n=24) were selected for constructing the model of spontaneous lung metastasis of melanoma B16-F10 cells. Subsequently, the mice were randomly divided into Endostar group, AuNPs group, AuNPs-Endostar group and model group. After the formation of melanoma, the mice in each group were injected with different drugs through tail vein for 0.1 mL daily. After 9 d, the mice were narcotized for cutting the tumors in situ. After the operation, they were raised for 2 weeks before killed for obtaining the lung tissues to observe the situation of the metastasis. HE staining was utilized for observing the necrosis status of the tumors in situ, while immunostaining was applied for testing the expression of CD31, carbonic anhydrase-IX (CA-IX), vimentin and zonula occludens-1 (ZO-1) in the tumors. RESULTS: Compared with model group, the pulmonary metastasis in the groups with medical treatment was obviously reduced. In AuNPs-Endostar group, the metastasis inhibition rate was the highest, and the tumor necrosis was also decreased obviously, with the significant reduction of CD31, CA-IX and vimentin expression in the tumors and significant increase in ZO-1 expression. CONCLUSION: Compared with using Endostar or AuNPs alone, the combination of AuNPs with Endostar significantly improves the curative effect of inhibiting the pulmonary metastasis of melanoma in the mice. The mechanism may be related to reducing the tumor angiogenesis, norma-lizing the blood vessels and improving tumor hypoxia, thus inhibiting the tumor epithelial-mesenchymal transition, increasing the tight junctions between tumor cells and decreasing the invasiveness.  相似文献   
4.
硅是地壳内含量第二丰富的元素。近年来,人们开始探索硅的纳米材料在农业领域的运用。为更好地将二氧化硅纳米颗粒应用于园艺植物生产,以黄瓜栽培品种新唐山秋瓜(Cucumissativuscv."QiuguaofNew Tangshan")为材料,采用盆栽的方式研究不同施入量下(0、5、10和20m L)浓度为30%的二氧化硅溶液对黄瓜根系解剖结构、根毛形成、黄瓜叶片光合色素含量、叶绿素荧光参数以及气体交换的影响。结果表明,二氧化硅纳米颗粒对黄瓜的根系解剖结构并没有显著的影响,但对根毛形成的影响较大,在每盆20m L二氧化硅溶液条件下的根毛密度最高。施入不同量的二氧化硅溶液对黄瓜叶片光合色素含量均有提高但并不明显,且在较低施入浓度下,光合作用机制得到一定的提高。黄瓜叶片的净光合速率随着二氧化硅施入量的增加逐渐增加,但施入量对蒸腾速率的影响不明显。综上,二氧化硅纳米颗粒通过促进根毛形成以及提高净光合速率能够提高植物的生长机理,进而促进植物生长和产量的提高,将其运用于农业生产及园艺作物生产上具有广阔前景。  相似文献   
5.
本研究建立了基于表面增强拉曼散射技术(Surface-enhanced Raman scattering,SERS)的农田水样中微囊藻毒素-LR(Microcystin-LR,MC-LR)的检测方法。采用柠檬酸钠还原法制备金种(Au nanoparticles,Au NPs),通过媒介增长法制备了刺状金纳米颗粒(Spiny gold nanoparticles,SGNPs),使用紫外-可见吸收光谱(Ultraviolet visible,UV-vis)、透射电镜(Transmission electron microscopy,TEM)和探针分子(对巯基苯甲酸,4-mercaptobenzoic acid,4-MBA)对SGNPs进行了表征及鉴定。研究以三角状金纳米颗粒作为基底,选择MC-LR在1 007 cm~(-1)和1 309 cm~(-1)处的特征峰作为定量峰,激光器激发波长为785 nm,积分时间20 s,建立检测方法。本研究建立的检测方法在1.0~100 000μg·L~(-1)的浓度范围内具有良好的线性关系,检测限(LOD)和回收率分别为1.0μg·L~(-1)和80%~102%,使用本方法对镇江市内运粮河及古运河的灌溉水样进行检测,MC-LR的检出率为40%,含量最高达1.81μg·L~(-1),检测结果与LC-MS/MS比对,相关系数为0.84。本研究建立的方法快速准确,前处理简单,能满足农田水样中MC-LR的现场快速检测的要求。  相似文献   
6.
Nutraceuticals have gained immense importance in poultry science recently considering the nutritional and beneficial health effects of their constituents. Besides providing nutritional requirements to birds, nutraceuticals have beneficial pharmacological effects, for example, they help in establishing normal physiological health status, prevent diseases and thereby improve production performance. Nutraceuticals include amino acids, vitamins, minerals, enzymes, etc. which are important for preventing oxidative stress, regulating the immune response and maintaining normal physiological, biochemical and homeostatic mechanisms. Nutraceuticals help in supplying nutrients in balanced amounts for supporting the optimal growth performance in modern poultry flocks, and as a dietary supplement can reduce the use of antibiotics. The application of antibiotic growth enhancers in poultry leads to the propagation of antibiotic-resistant microbes and drug residues; therefore, they have been restricted in many countries. Thus, there is a demand for natural feed additives that lead to the same growth enhancement without affecting the health. Nutraceuticals substances have an essential role in the development of the animals’ normal physiological functions and in protecting them against infectious diseases. In this review, the uses of amino acids, vitamins and minerals as well as their mode of action in growth promotion and elevation of immune system are discussed.  相似文献   
7.
Pre-conceptual sex selection is still a highly debatable process whereby X and Y chromosome bearing spermatozoa are isolated before oocyte fertilization. Recently, magnetic nanoparticles (MNP) have been used to determine X and Y chromosomes bearing spermatozoa as a result of searching for a cheap, highly efficient method using non-toxic materials. This study aimed to recover the sperm bearing X chromosomes in ram with different concentrations of MNP and then evaluate the success of this method using polymerase chain reaction (PCR). Ram sperms were divided into four groups, treated with 0 (control), 50, 100 and 200 μg/ml MNP, respectively. MNP was used to restore sperm cells bearing X chromosomes. Upon recovery, the PCR was performed to identify the X and Y sperms, Methyl ThiazoleTetrazolium (MTT), to assess MNP toxicity and sperm viability and acridine orange (AO) to evaluate sperm DNA integrity. The results of PCR revealed that the treatment of spermatozoa- bearing X chromosomes with 50 μg/ml MNP had the highest effects on the recovery of X sperm rather than the other concentrations of MNP. However, the concentrations of MNP did not have any toxic effects on spermatozoa, sperm viability and, DNA integrity, but the high concentration of MNP (200 μg/ml) significantly reduced DNA integrity. According to MTT and AO results, the concentrations of MNP used in this study had no toxic effects on spermatozoa and did not reduce the sperm viability and DNA integrity, except that 200 μg/ml MNP significantly reduced DNA integrity.  相似文献   
8.
Oxidative stress is inevitable as it is derived from the handling, culturing, inherent metabolic activities and medium supplementation of embryos. This study was performed to investigate the protective effect of chitosan nanoparticles (CNPs) on oxidative damage in porcine oocytes. For this purpose, cumulus–oocyte complexes (COCs) derived from porcine slaughterhouse ovaries were exposed to different concentrations of CNPs (0, 10, 25 and 50 µg/ml) during in vitro maturation (IVM). Oocytes treated with 25 µg/ml CNPs showed significantly higher levels of GSH, along with a significant reduction in ROS levels compared to control, CNPs10 and CNPs50 groups. In parthenogenetic embryo production, the maturation rate was significantly higher in the CNPs25 group than that in the control and all other treated groups. In addition, when compared to the CNPs50 and control groups, CNPs25-treated oocytes showed significantly higher cleavage and blastocyst development rates. The highest concentration of CNPs reduced the total cell number and ratio of ICM: TE cells in parthenogenetic embryos, suggesting that there is a threshold where benefits are lost if exceeded. In cloned embryos, the CNPs25 group, as compared to all other treated groups, showed significantly higher maturation and cleavage rates. Furthermore, the blastocyst development rate in the CNPs25-treated group was significantly higher than that in the CNPs50-treated group, as was the total cell number. Moreover, we found that cloned embryos derived from the CNPs25-treated group showed significantly higher expression levels of Pou5f1, Dppa2, and Ndp52il genes, compared with those of the control and other treated groups. Our results demonstrated that 25 µg/ml CNPs treatment during IVM improves the developmental competence of porcine oocytes by reducing oxidative stress.  相似文献   
9.
Nanotechnology is a young branch of the discipline generated by nanomaterials. Its development has greatly contributed to technological progress and product innovation in the field of agriculture. The antimicrobial properties of nanoparticles (NPs) can be used to develop nanopesticides for plant protection. Plant diseases caused by bacterial and fungal infestations are the main types of crop diseases. Once infected, they will seriously threaten crop growth, reduce yield and quality, and affect food safety, posing a health risk to humans. We reviewed the application of metal-based nanoparticles in inhibiting plant pathogenic bacteria and fungi, and discuss the antibacterial mechanisms of metal-based nanoparticles from two aspects: the direct interaction between nanoparticles and pathogens, and the indirect effects of inducing plant resilience to disease. © 2022 Society of Chemical Industry.  相似文献   
10.
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